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A Novel FEF Method for Insulation Status Monitoring of Underground Power Cables

机译:一种新型FEF方法,用于地下电力电缆的绝缘状态监测

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—Monitoring on underground power cables in a close-fitting manner using mobile robot can acquire more actual information about insulation status of cables. Focusing on a water tree detection module in the monitoring system, this paper proposes fringing electric field (FEF) method to detect probably formed water tree in the insulation layer. An arch substrate based interdigital FEF sensor is designed to reduce the disturbance caused by applying traditional interdigital FEF sensor in the water tree detection. The mathematical model of the novel sensor is built by finite element method. Comparison of the electric field distribution that produced by the above two kinds of sensors is carried out by finite element analysis. Effect on novel sensor performance caused by excitation frequency is discussed. Parameters of the proposed sensor are optimized by analyzing the electric field penetrability with varying finger width and electrode separation. Simulation results demonstrate the sensor’s design is reasonable and the electric field penetrability of the novel sensor is remarkably improved compared with traditional interdigital FEF sensor.
机译:- 使用移动机器人的封闭方式在地下电源电缆上的监控可以获得有关电缆绝缘状态的更多实际信息。专注于监测系统中的水树检测模块,本文提出了流苏电场(FEF)方法来检测绝缘层中的形成水树。基于拱形基材基基的争端FEF传感器旨在减少通过在水树检测中施加传统的争端的叉指芯片传感器引起的干扰。新型传感器的数学模型由有限元方法构建。通过有限元分析进行通过上述两种传感器产生的电场分布的比较。讨论了激发频率引起的新型传感器性能的影响。通过分析具有不同的手指宽度和电极分离的电场渗透性来优化所提出的传感器的参数。仿真结果证明了传感器的设计合理,与传统的争端FEF传感器相比,新传感器的电场渗透性显着提高。

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